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Biomedical subjects

K Noonan

Publications and source records attributed to K Noonan.

12 recordsLinked to original sources

Dialysate calcium reduction in CAPD patients treated with calcium carbonate and alfacalcidol.

The use of oral calcium carbonate as a phosphate binder is often complicated by hypercalcaemia, particularly with concomitant use of vitamin D analogues. We previously found that stepwise reduction of dialysate calcium effectively countered this complication in haemodialysis patients, and have now assessed the strategy in CAPD patients. Seventeen patients underwent conversion from aluminium hydroxide to calcium carbonate and were followed for 5 months, with subsequent addition of alfacalcidol for a further 5 months. Standard CAPD dialysate (1.75 mM calcium) was used, reducing to 1.45 mM and, if necessary, to 1.00 mM in patients who became hypercalcaemic. While receiving calcium carbonate alone, 12 of the 17 patients became hypercalcaemic, this responding in four to dialysate calcium reduction to 1.45 mM. In the remaining eight patients, further reduction to 1.00 mM was required and in two patients even this failed to control hypercalcaemia adequately, necessitating reversion to aluminium hydroxide. Phosphate control remained unchanged, as did calcium x phosphorus product. There were transient increases of blood ionised calcium, and decreases of parathyroid hormone, with progressive reduction of serum aluminium and alkaline phosphatase. The addition of alfacalcidol (0.25 microgram/day) led to hypercalcaemia in six subjects, successfully countered by dialysate calcium reduction in four. The results show that standard CAPD dialysate calcium at 1.75 mM is too high for the majority of calcium carbonate treated patients and that substantial reductions of the dialysate calcium concentration are required if calcium carbonate is to be used effectively.

Aluminum Hydroxide

'Pulse' oral calcitriol in uraemic patients: rapid modification of parathyroid response to calcium.

We performed dynamic parathyroid function tests, with generation of parathyroid hormone/ionized calcium (PTH/iCa) response curves, obtained during sequential hypercalcaemic and hypocalcaemic dialysis, on six haemodialysis patients before and after 4-weekly 'pulse' doses of oral calcitriol. There were no significant changes in the pretreatment, 2-week and 4-week values of blood ionized calcium, serum total calcium, phosphate, and alkaline phosphatase. PTH decreased significantly after 4 weeks of treatment with calcitriol (P less than 0.03), and the post-treatment PTH/iCa curves were all displaced leftwards and downwards, indicating a marked inhibitory effect of calcitriol on parathyroid responsiveness across and beyond the physiological range of calcaemia. The mean shift of the PTH/iCa relationship was equivalent to a reduction of iCa of 0.2 mM for any given concentration of PTH, and conversely to a 70% reduction of PTH for any given blood iCa. The results suggest that wide spacing of oral 'pulse' doses of calcitriol can achieve favourable modification of the PTH/iCa relationship, and that dosing interval and dose size, rather than route of administration, may be the major determinants of the previously reported superiority of intravenous over daily oral calcitriol regimens.

Administration, Oral

Thyroxine replacement in post-radioiodine hypothyroidism.

Thyroxine replacement dose in 70 patients with post-radioiodine (for Graves' thyrotoxicosis) hypothyroidism was compared with that in 34 patients with autoimmune hypothyroidism matched for age and sex and diagnosed during the same period. Median replacement dose in the post-radioiodine group (100 micrograms daily) was significantly lower (P = 0.006) than in the autoimmune hypothyroid group (137.5 micrograms daily). Furthermore there was marked variation in the time elapsing from onset of post-radioiodine hypothyroidism to achievement of a given maintenance dose. These findings may be explained by persistence of non-TSH mediated thyroid function, after radioiodine therapy for Graves' thyrotoxicosis. The observations indicate the potential risk of overtreatment with thyroxine in post-radioiodine hypothyroidism unless the dose is carefully titrated against serum TSH levels. Final thyroxine requirements may not be evident in the initial phase of treatment and patients with apparently low maintenance thyroxine requirements require long-term follow up.

Adolescent

An association between hypothalamic-pituitary dysfunction and peripheral endocrine function in extreme obesity.

OBJECTIVE: The aim was to investigate a possible relationship between measures of insulin secretion and glucose disposal and hypothalamic-pituitary function in extreme obesity. DESIGN: A cross-sectional analysis of obese subjects attending the Obesity Clinic at the Royal London Hospital and normal weight volunteers was undertaken. Investigations were performed on separate occasions and in random order. PATIENTS: The subjects were 34 extremely obese women, menstruating and with normal glucose tolerance (mean Body Mass Index, BMI = 42) and 15 normal weight female controls (mean BMI = 22). MEASUREMENTS: The following were measured: fasting insulin, relative insulin resistance calculated using fasting insulin and plasma glucose by the homeostatic model of assessment, insulin release during a 75-g oral glucose tolerance test (insulin area under the curve), steady-state plasma glucose level achieved during a simultaneous intravenous infusion of dextrose, insulin and somatostatin, and the prolactin and growth hormone (GH) responses to insulin-induced hypoglycaemia. RESULTS: In the obese group an impaired prolactin response to hypoglycaemia (mean area under the curve obese 54 U/l min, controls 155 U/l min; P = 0.0001) was inversely correlated to fasting insulin, r2 = 0.142, P = 0.03; relative insulin resistance, r2 = 0.134, P = 0.03 and steady-state plasma glucose level, r2 = 0.345, P = 0.0004 whereas the impaired GH response (mean GH area under the curve obese 1.9 U/l min, controls 65.7 U/l min; P = 0.0001) was inversely correlated to steady-state plasma glucose level, r2 = 0.196, P = 0.01. Backward procedure for stepwise regression analysis confirmed the steady-state plasma glucose level to be the most important variable associated with the prolactin and growth hormone response among the remaining indices of insulin secretion/resistance. CONCLUSION: We conclude from these findings that hyperinsulinaemia in obesity is an important association with altered hypothalamic-pituitary function indicated by impaired prolactin and growth hormone secretion to insulin-induced hypoglycaemia.

Adult

Decreased sex hormone binding globulin (SHBG) and insulin-like growth factor binding protein (IGFBP-1) in extreme obesity.

Obesity may be characterized by abnormal sex steroid secretion and reduced sex hormone binding globulin (SHBG) which in turn is related to fat distribution and insulin secretion. Recent in-vitro and in-vivo evidence suggests that insulin is the common mechanism regulating the secretion of SHBG and insulin-like growth factor small binding protein (IGFBP-1). IGFBP-1 appears not only to be a carrier for insulin growth factors (IGFs) but also to play an active role in growth processes, independent of growth hormone secretion. We have examined the possible relationship between fasting insulin, SHBG, testosterone, IGF-1, IGFBP-1 and fat distribution in 25 extremely obese, menstruating women (mean weight 107 +/- 3 kg) with normal glucose tolerance. Fat distribution was assessed from measurements of the waist to hip ratio (W/H). The obese women showed an elevated fasting insulin (mean +/- SEM; 21 +/- 2 mumol/l), a normal IGF-1, but reduced IGFBP-1 (14.6 +/- 2 micrograms/l); in 15 women IGFBP-1 levels were undetectable by the present assay. In addition, SHBG levels were reduced in the obese women (24 +/- 2 nmol/l) but total testosterone values (1.9 +/- 0.1 nmol/l) were normal. The elevated fasting insulin levels were positively correlated with increasing upper segment obesity as expressed by a rising W/H ratio (P less than 0.01, r2 = 0.306) and inversely correlated with SHBG (P less than 0.01, r2 = 0.483). Similarly, reduced SHBG values showed an inverse correlation with increasing W/H ratio (P less than 0.001, r2 = 0.383). No correlation was found between IGFBP-1 and W/H ratio but a strong positive correlation was seen between IGFBP-1 and SHBG (P less than 0.001, r2 = 0.466). Furthermore, an equally significant inverse correlation was found between IGFBP-1 and insulin levels (P less than 0.001, r2 = 0.474).(ABSTRACT TRUNCATED AT 250 WORDS)

Adipose Tissue

Impaired prolactin secretion and body fat distribution in obesity.

Human obesity shows clustering within families. The hypothesis for the presence of a major gene or genes acting in human obesity is supported by recent evidence from studies of obesity in adoptees and their biological parents and siblings. The heterogeneity of obesity may be demonstrated by the shape of fat distribution and the prolactin response to insulin hypoglycaemia. Fat distribution has been shown to have a genetic background whereas a primary disorder of hypothalamic function is suspected in obese women who show an impaired prolactin response to insulin-induced hypoglycaemia. We have investigated the possible association between fat distribution and hypothalamic function in 23 extremely obese, nondiabetic premenopausal women who have been characterized using their absolute body weight, body mass index (BMI), fat distribution (expressed as waist to hip ratio), fasting insulin, basal prolactin and prolactin response to hypoglycaemia. Fasting insulin values showed a significant correlation (P less than 0.05, R = 0.604) with increasing waist to hip ratio (upper body segment obesity), whereas the graded prolactin response to hypoglycaemia of the obese women showed a negative association with increasing upper body segment obesity (P less than 0.05; R = -0.446). No relationship was observed between fasting insulin and the prolactin response to hypoglycaemia. We suggest that this previously unrecognized association of an impaired prolactin response to hypoglycaemia and upper body segment fatness may be useful for the investigation of the genetics of obesity.

Adipose Tissue

Familial acromegaly: studies in three families.

Acromegaly is usually regarded as a disease which arises sporadically except on those rare occasions in which it occurs as one component of an inherited pluriglandular syndrome. Familial acromegaly occurring in isolation has been reported only rarely. We have studied three families in each of which two first-degree relatives have developed acromegaly without clinical evidence of other endocrinopathies, in order to clarify the relationship of familial acromegaly to multiple endocrine neoplasia, type 1 (MEN 1). No further subclinical cases of acromegaly have been detected in those first-degree relatives of the index cases who were screened. In two of the families, we have found no evidence of abnormal pancreatic or parathyroid function either in the acromegalic index cases or their asymptomatic relatives: a diagnosis of MEN 1 is therefore effectively excluded. In the third family, the presence of multiple subcutaneous lipomata in several members of the family and elevation of PTH levels in two (normocalcaemic) acromegalic index cases, might indicate a highly atypical presentation of MEN 1. None of the six acromegalic index cases had elevations of circulating growth hormone releasing hormone levels. We conclude that isolated familial acromegaly may be more common than has hitherto been realized and that, in these families at least, ectopic production of growth hormone releasing hormone is not responsible.

Acromegaly

High-dose calcium carbonate with stepwise reduction in dialysate calcium concentration: effective phosphate control and aluminium avoidance in haemodialysis patients.

To reduce potentially toxic aluminium exposure, the phosphate binding agent aluminium hydroxide was replaced by high-dose oral calcium carbonate in 15 haemodialysis patients. Stepwise reduction in dialysate calcium concentration (from 1.75 to 1.35 mmol/l and then to 1.05 mmol/l) was made when necessitated by hypercalcaemia. After 6 months, the mean daily dose of calcium carbonate was 62 mmol (range 25-150 mmol). This dose maintained good control of plasma phosphate (baseline, 1.34 +/- 0.32 mmol/l (mean +/- SD); 12 weeks, 1.30 +/- 0.22 mmol/l; 24 weeks, 1.51 +/- 0.31 mmol/l). Calcium x phosphate product did not rise significantly (baseline, 3.41; 12 weeks, 3.44; 24 weeks, 4.02). Apart from a transient early increase, ionised calcium did not change significantly (baseline, 1.23 +/- 0.10 mmol/l; 12 weeks, 1.24 +/- 0.10 mmol/l). Intact (1-84) parathyroid hormone concentration decreased from 241 pg/ml to 116 pg/ml (median values, P less than 0.05) after 12 weeks. This simple and well-tolerated regimen almost completely eliminated oral aluminium exposure, effectively controlled plasma phosphate and calcium concentrations, and reduced hyperparathyroidism.

Administration, Oral

Growth hormone response to growth hormone releasing factor in diabetic men.

Increased plasma concentrations of growth hormone (GH) are reported in diabetes and it is suggested that this may be important in the development of complications. We have investigated fasting GH levels and the response to 100 micrograms i.v. growth hormone releasing factor, GRF(1-29)NH2, in age-matched men: six normal weight controls, six obese controls, six insulin-dependent diabetics, six normal weight non-insulin dependent diabetics and six obese non-insulin dependent diabetics. None of the diabetic men had clinical evidence of diabetic complications. Fasting GH values did not differ significantly between the five groups. The peak GH response to GRF was similar in the controls, insulin-dependent diabetics (IDD) and non-insulin dependent (NIDD) normal weight diabetics (mean peak +/- SEM: controls 25.5 +/- 5 mU/l, IDD 26.5 +/- 6 mU/l, NIDD 19.7 +/- 5 mU/l) but was significantly reduced in the two obese groups (obese 6.4 +/- 3 mU/l, obese diabetics 4.5 +/- 1 mU/l, P less than 0.01). This impairment of GH secretion was unrelated to either fasting plasma insulin or glucose concentration. We conclude that our results do not confirm the previous reports of abnormal GH secretion in diabetes but do demonstrate a markedly impaired GH response to GRF to be a feature of obesity.

Adult

Growth hormone response to low dose intravenous injections of growth hormone releasing factor in obese and normal weight women.

We have recently reported an impaired growth hormone (GH) response to a single i.v. bolus dose of growth hormone releasing factor (1 microgram/kg body weight) in obese women. We have now investigated whether the i.v. administration of low dose GHRF(1-29)NH2 (0.33 microgram/kg/h) by 15 min pulsed injections for 3 h followed by an i.v. bolus (1 microgram/kg) to four normal weight women and six obese women results in an enhancement of GH release. In the control women low dose GHRF, given either as a single 10 microgram injection or in pulses of equivalent total dosage, produced a GH response identical to that seen after a single bolus of 60 micrograms (mean peak GH low dose 30 +/- 2 mU/l, peak GH large dose 30 +/- 0.5 mU/l). In the obese women GH release was significantly less than the controls after low doses of GHRF (P less than 0.01) and the peak was delayed compared to that following a single large bolus dose (peak GH 7 +/- 1.2 mU/l). However, three of the obese women who previously showed no response to a large dose of GHRF did release GH after low dose pulsed injections. The final bolus of GHRF after 3 h of pulsed injections did not elicit any additional GH release in the subjects irrespective of body weight. We conclude that obesity may be characterized by impaired GH release to i.v. GHRF. The finding that some obese women do not respond to a single large dose injection of GHRF but do release GH after low dose pulsed injections supports the hypothesis of a hypothalamic disorder in these women.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult

Impaired growth hormone response to growth hormone releasing factor and insulin-hypoglycaemia in obesity.

We have previously reported an impaired growth hormone (GH) response and abnormal prolactin release to insulin-hypoglycaemia in obesity. We suggested that obese women with an absent prolactin response to hypoglycaemia ('non-responders') have a disorder of hypothalamic function. We have now investigated the GH response to i.v. growth hormone releasing factor, GHRF (1-29)NH2, in 14 obese women and nine age-matched normal-weight women. We found a significantly reduced GH response to GHRF in the obese women as compared with controls (mean peak +/- SEM: obese 8.9 +/- 2 mu/l, controls 28 +/- 2 mu/l; P less than 0.01). When the obese women were divided on the basis of their prolactin response to insulin-hypoglycaemia (seven 'non-responders', mean weight 102 +/- 5 kg; seven responders, mean weight 108 +/- 8 kg) a similar GH response to GHRF was found between the two groups but the GH response to hypoglycaemia was significantly less in the 'non-responder' women (mean peak 'non-responders' 10.5 +/- 3 mu/l, responders 27 +/- 4 mu/l; P less than 0.05). We conclude that obesity may be characterized by an impaired GH response to both i.v. GHRF and insulin-hypoglycaemia, which suggests altered hypothalamic-pituitary function. The finding that the GH response to hypoglycaemia is significantly less in the obese prolactin 'non-responder' women supports the hypothesis for a hypothalamic disorder.

Adult